Wen Qi-Ye, Xie Yun-Song, Zhang Huai-Wu, Yang Qing-Hui, Li Yuan-Xun, Liu Ying-Li
State Key Laboratory of Electronic Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, China.
Opt Express. 2009 Oct 26;17(22):20256-65. doi: 10.1364/OE.17.020256.
Metamaterial (MM) absorber is a novel device to provide near-unity absorption to electromagnetic wave, which is especially important in the terahertz (THz) band. However, the principal physics of MM absorber is still far from being understood. In this work, a transmission line (TL) model for MM absorber was proposed, and with this model the S-parameters, energy consumption, and the power loss density of the absorber were calculated. By this TL model, the asymmetric phenomenon of THz absorption in MM absorber is unambiguously demonstrated, and it clarifies that strong absorption of this absorber under studied is mainly related to the LC resonance of the split-ring-resonator structure. The distribution of power loss density in the absorber indicates that the electromagnetic wave is firstly concentrated into some specific locations of the absorber and then be strongly consumed. This feature as electromagnetic wave trapper renders MM absorber a potential energy converter. Based on TL model, some design strategies to widen the absorption band were also proposed for the purposes to extend its application areas.
超材料(MM)吸波器是一种能够对电磁波提供近乎单位吸收率的新型器件,这在太赫兹(THz)频段尤为重要。然而,MM吸波器的主要物理原理仍远未被理解。在这项工作中,提出了一种用于MM吸波器的传输线(TL)模型,并利用该模型计算了吸波器的S参数、能量消耗和功率损耗密度。通过该TL模型,明确展示了MM吸波器中太赫兹吸收的不对称现象,并阐明了所研究的该吸波器的强吸收主要与裂环谐振器结构的LC谐振有关。吸波器中功率损耗密度的分布表明,电磁波首先集中到吸波器的某些特定位置,然后被强烈消耗。这种作为电磁波捕获器的特性使MM吸波器成为一种潜在的能量转换器。基于TL模型,还提出了一些拓宽吸收带的设计策略,以扩大其应用领域。